燃烧
材料科学
点火系统
粒径
铝
可燃性
粒子(生态学)
航程(航空)
可燃极限
绝热火焰温度
化学工程
复合材料
分析化学(期刊)
热力学
化学
有机化学
地质学
工程类
物理
海洋学
燃烧室
作者
Peng Ma,Shuangfeng Wang,Xiuzhen Wang
摘要
Experiments have been performed to explore the combustion behaviors of spherical micron-sized aluminum (Al) particles and liquid water for Al particle sizes in the range of . The ignition of quasi-homogeneous Al/water mixtures was successfully implemented by employing a novel ignition method, and self-sustained flame propagation was obtained in the mixtures over a broad range of fuel-equivalence ratio . The burning rates, flammability limits, and thermal structure of the propagating flame were determined. The combustion products were also analyzed. For the particle sizes considered, the burning rates were found to first increase and then decrease as increased, with the maximum values occurring at and substantially lower than nano- mixtures. The dependence of the burning rate on particle size follows a power law, , indicating that the reaction process of and water is kinetically controlled. Base on the experimental observations, a simplified flame propagation model was developed to provide insight into the effects of particle size and equivalence ratio. Combustion product analyses revealed that Al residues increased as was further increased from 0.7, and the combustion efficiency of aluminum decreased accordingly.
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